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Decellularization of bovine corneas for tissue engineering applications
Sara Ponce Márquez
, Virginia Sáez Martínez
, Winnette McIntosh Ambrose
, Jennie Wang
, Nerea Garagorri Gantxegui
, Oliver Schein
, Jenniffer Elisseeff
Chemical Engineering & Applied Chemistry
Tecnalia
Johns Hopkins University
Johns Hopkins Hospital
Research output
:
Contribution to journal
›
Article
›
peer-review
130
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Citations (SciVal)
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Keyphrases
Extracellular Matrix
100%
Tissue Engineering Applications
100%
Bovine Cornea
100%
Decellularization
100%
Processing Methods
66%
Cornea
66%
Tissue Processing
66%
Microenvironment
33%
Extraction Methods
33%
Host Cell
33%
Cell Migration
33%
Synthetic Polymers
33%
In Vitro Cells
33%
Mechanical Properties
33%
Biocompatibility
33%
Wound Healing
33%
Tissue Scaffolds
33%
Mechanical Testing
33%
Tissue Regeneration
33%
Histology
33%
Cell Seeding
33%
Regenerative Medicine
33%
Acellular Tissue
33%
Processing Protocol
33%
Functional Reconstruction
33%
Native Tissue
33%
Stem Cell Differentiation
33%
Decellularized Cornea
33%
Cell Extraction
33%
Xenogeneic
33%
Tissue-like
33%
Bioresorbable Scaffolds
33%
Electron Microscopy Techniques
33%
Engineering
Processing Method
100%
Tissue Regeneration
100%
Engineering Application
100%
Synthetic Polymer
50%
Mechanical Testing
50%
Mechanical Property
50%
Starting Material
50%
Stem Cell Differentiation
50%
Regenerative Medicine
50%
Native Tissue
50%
Microenvironments
50%
Extraction Process
50%
Material Science
Synthetic Polymer
100%
Biocompatibility
100%
Mechanical Property
100%
Stem Cell
100%
Mechanical Testing
100%
Electron Microscopy
100%
Medical Science
100%
Medicine and Dentistry
Tissue Regeneration
100%
Decellularization
100%
Cornea
100%
Extracellular Matrix
75%
In Vitro
25%
Wound Healing
25%
Cell Differentiation
25%
Biocompatibility
25%
Cell Migration
25%
Electron Microscopy
25%
Host Cell
25%
Histology
25%
Mechanical Testing
25%
Immunology and Microbiology
Cornea
100%